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FCC17B25SA650 D-Sub Receptacle Equivalent & Substitute Parts
Part Overview
The FCC17B25SA650 is a 25-position D-Sub receptacle connector manufactured by Amphenol ICC (Commercial Products). This through-hole, right-angle solder-terminated connector features female sockets with a 2-row configuration in shell size 3 (DB, B). The connector is rated for 5A current at 200V and operates across the temperature range of -40°C to 85°C.
The FCC17B25SA650 is classified as obsolete. Identifying equivalent and substitute parts is necessary to maintain design continuity, ensure component availability, and support ongoing production and field service requirements for legacy systems utilizing this connector.
Substiute Parts
Key Parameters
| Parameter | Value |
|---|---|
| Connector Style | D-Sub |
| Connector Type | Receptacle, Female Sockets |
| Number of Positions | 25 |
| Number of Rows | 2 |
| Shell Size, Connector Layout | 3 (DB, B) |
| Mounting Type | Through Hole, Right Angle |
| Termination | Solder |
| Shell Material, Finish | Steel, Tin Plated |
| Contact Finish | Gold |
| Contact Finish Thickness | 15.0µin (0.38µm) |
| Current Rating (Amps) | 5A |
| Voltage Rating | 200V |
| Backset Spacing | 0.318" (8.08mm) |
| Operating Temperature | -40°C ~ 85°C |
| Material Flammability Rating | UL94 V-0 |
| Contact Material | Phosphor Bronze |
| Dielectric Material | Thermoplastic |
| Features | Board Lock, Filter |
Substitute Part Grouping Explanation
Substitute parts for the FCC17B25SA650 are grouped into two categories based on electrical and mechanical compatibility:
Category 1: Amphenol ICC FCE17 Series (Active Status)
The FCE17B25SA650, FCE17B25SA600, FCE17B25SA610, FCE17B25SA640, FCE17B25SA680, FCE17B25SA690, FCE17B25SA6D0, and FCE17B25SA6E0 are direct functional equivalents manufactured by Amphenol ICC. These parts maintain identical specifications across all critical parameters:
- 25-position D-Sub receptacle configuration
- Female socket connector type
- 2-row layout in shell size 3 (DB, B)
- Through-hole, right-angle solder termination
- Steel, tin-plated shell with gold-plated contacts
- 5A current rating
- 0.318" (8.08mm) backset spacing
- Board Lock and Filter features
- UL94 V-0 flammability rating
- Phosphor Bronze contact material
- -40°C to 85°C operating temperature range
- Thermoplastic dielectric material with glass filling
The primary distinction is product status: the FCE17 series connectors are active products, whereas the FCC17B25SA650 is obsolete. The FCE17 series also features RoHS compliance, whereas the FCC17B25SA650 is RoHS non-compliant.
Category 2: HARTING 09663126600 and 09663126601 (Active Status)
The HARTING 09663126600 and 09663126601 are similar D-Sub receptacle connectors with the following compatible parameters:
- 25-position D-Sub receptacle configuration
- Female socket connector type
- 2-row layout in shell size 3 (DB, B)
- Through-hole, right-angle solder termination
- Steel shell with unthreaded or M3 flange feature
- UL94 V-0 flammability rating
- Solder termination
These HARTING connectors differ in the following parameters: higher current rating (6.5A versus 5A), larger backset spacing (0.409" versus 0.318"), stamped contact form (versus machined), copper alloy contact material (versus phosphor bronze), and extended operating temperature range (-55°C to 125°C versus -40°C to 85°C).
Parameter Comparison
| Parameter | FCC17B25SA650 | FCE17B25SA650 | FCE17B25SA600 | FCE17B25SA610 | FCE17B25SA640 | FCE17B25SA680 | FCE17B25SA690 | FCE17B25SA6D0 | FCE17B25SA6E0 | 09663126600 | 09663126601 |
|---|---|---|---|---|---|---|---|---|---|---|---|
| Manufacturer | Amphenol ICC | Amphenol ICC | Amphenol ICC | Amphenol ICC | Amphenol ICC | Amphenol ICC | Amphenol ICC | Amphenol ICC | Amphenol ICC | HARTING | HARTING |
| Product Status | Obsolete | Active | Active | Active | Active | Active | Active | Active | Active | Active | Active |
| Connector Type | Receptacle, Female Sockets | Receptacle, Female Sockets | Receptacle, Female Sockets | Receptacle, Female Sockets | Receptacle, Female Sockets | Receptacle, Female Sockets | Receptacle, Female Sockets | Receptacle, Female Sockets | Receptacle, Female Sockets | Receptacle, Female Sockets | Receptacle, Female Sockets |
| Number of Positions | 25 | 25 | 25 | 25 | 25 | 25 | 25 | 25 | 25 | 25 | 25 |
| Number of Rows | 2 | 2 | 2 | 2 | 2 | 2 | 2 | 2 | 2 | 2 | 2 |
| Shell Size, Connector Layout | 3 (DB, B) | 3 (DB, B) | 3 (DB, B) | 3 (DB, B) | 3 (DB, B) | 3 (DB, B) | 3 (DB, B) | 3 (DB, B) | 3 (DB, B) | 3 (DB, B) | 3 (DB, B) |
| Mounting Type | Through Hole, Right Angle | Through Hole, Right Angle | Through Hole, Right Angle | Through Hole, Right Angle | Through Hole, Right Angle | Through Hole, Right Angle | Through Hole, Right Angle | Through Hole, Right Angle | Through Hole, Right Angle | Through Hole, Right Angle | Through Hole, Right Angle |
| Termination | Solder | Solder | Solder | Solder | Solder | Solder | Solder | Solder | Solder | Solder | Solder |
| Shell Material, Finish | Steel, Tin Plated | Steel, Tin Plated | Steel, Tin Plated | Steel, Tin Plated | Steel, Tin Plated | Steel, Tin Plated | Steel, Tin Plated | Steel, Tin Plated | Steel, Tin Plated | Steel | Steel |
| Contact Finish | Gold | Gold | Gold | Gold | Gold | Gold | Gold | Gold | Gold | Not Specified | Not Specified |
| Contact Finish Thickness | 15.0µin (0.38µm) | 15.0µin (0.38µm) | 15.0µin (0.38µm) | 15.0µin (0.38µm) | 15.0µin (0.38µm) | 15.0µin (0.38µm) | 15.0µin (0.38µm) | 15.0µin (0.38µm) | 15.0µin (0.38µm) | Not Specified | Not Specified |
| Current Rating (Amps) | 5A | 5A | 5A | 5A | 5A | 5A | 5A | 5A | 5A | 6.5A | 6.5A |
| Voltage Rating | 200V | Not Specified | Not Specified | Not Specified | Not Specified | Not Specified | Not Specified | Not Specified | Not Specified | Not Specified | Not Specified |
| Backset Spacing | 0.318" (8.08mm) | 0.318" (8.08mm) | 0.318" (8.08mm) | 0.318" (8.08mm) | 0.318" (8.08mm) | 0.318" (8.08mm) | 0.318" (8.08mm) | 0.318" (8.08mm) | 0.318" (8.08mm) | 0.409" (10.40mm) | 0.409" (10.40mm) |
| Operating Temperature | -40°C ~ 85°C | -40°C ~ 85°C | -40°C ~ 85°C | -40°C ~ 85°C | -40°C ~ 85°C | -40°C ~ 85°C | -40°C ~ 85°C | -40°C ~ 85°C | -40°C ~ 85°C | -55°C ~ 125°C | -55°C ~ 125°C |
| Material Flammability Rating | UL94 V-0 | UL94 V-0 | UL94 V-0 | UL94 V-0 | UL94 V-0 | UL94 V-0 | UL94 V-0 | UL94 V-0 | UL94 V-0 | UL94 V-0 | UL94 V-0 |
| Contact Material | Phosphor Bronze | Phosphor Bronze | Phosphor Bronze | Phosphor Bronze | Phosphor Bronze | Phosphor Bronze | Phosphor Bronze | Phosphor Bronze | Phosphor Bronze | Copper Alloy | Copper Alloy |
| RoHS Status | RoHS non-compliant | RoHS Compliant | RoHS Compliant | RoHS Compliant | RoHS Compliant | RoHS Compliant | RoHS Compliant | RoHS Compliant | RoHS Compliant | ROHS3 Compliant | ROHS3 Compliant |
| Moisture Sensitivity Level (MSL) | 1 (Unlimited) | 1 (Unlimited) | 1 (Unlimited) | 1 (Unlimited) | 1 (Unlimited) | 1 (Unlimited) | 1 (Unlimited) | 1 (Unlimited) | 1 (Unlimited) | 1 (Unlimited) | 1 (Unlimited) |
Engineering Selection Recommendations
Primary Recommendation: Amphenol ICC FCE17 Series
The FCE17B25SA650, FCE17B25SA600, FCE17B25SA610, FCE17B25SA640, FCE17B25SA680, FCE17B25SA690, FCE17B25SA6D0, and FCE17B25SA6E0 are the preferred substitutes for the obsolete FCC17B25SA650. These connectors maintain complete electrical and mechanical compatibility with the original part across all critical parameters. The FCE17 series offers the additional advantage of active product status and RoHS compliance, supporting current manufacturing standards and regulatory requirements.
Secondary Recommendation: HARTING 09663126600 and 09663126601
The HARTING 09663126600 and 09663126601 connectors provide functional substitution for applications where the parameter differences are acceptable. These parts are suitable for designs that can accommodate the following variations:
- Higher current rating (6.5A versus 5A)
- Larger backset spacing (0.409" versus 0.318")
- Extended operating temperature range (-55°C to 125°C versus -40°C to 85°C)
- Stamped contact form (versus machined)
- Copper alloy contact material (versus phosphor bronze)
The HARTING connectors are active products with ROHS3 compliance and are available in higher inventory quantities.
Compliance Considerations
The FCC17B25SA650 is RoHS non-compliant. Designs requiring RoHS compliance must transition to the FCE17 series or HARTING alternatives, both of which meet current RoHS standards. All substitute options maintain UL94 V-0 flammability certification and MSL 1 moisture sensitivity rating.
Frequently Asked Questions (FAQ)
Q: Can the FCE17B25SA650 be used as a direct replacement for the FCC17B25SA650?
A: Yes. The FCE17B25SA650 maintains identical electrical and mechanical specifications across all critical parameters, including connector type, position count, shell size, mounting configuration, current rating, operating temperature range, and contact materials. The primary differences are product status (active versus obsolete) and RoHS compliance (compliant versus non-compliant).
Q: What are the key differences between the Amphenol ICC FCE17 series and the HARTING alternatives?
A: The Amphenol ICC FCE17 series maintains exact parameter compatibility with the original FCC17B25SA650, including 5A current rating, 0.318" backset spacing, and -40°C to 85°C operating temperature. The HARTING 09663126600 and 09663126601 offer higher current capacity (6.5A), larger backset spacing (0.409"), extended temperature range (-55°C to 125°C), and different contact materials (copper alloy versus phosphor bronze). Backset spacing differences require PCB layout verification before substitution.
Q: Are all FCE17B25SA6XX variants electrically equivalent?
A: Yes. All FCE17B25SA600, FCE17B25SA610, FCE17B25SA640, FCE17B25SA680, FCE17B25SA690, FCE17B25SA6D0, and FCE17B25SA6E0 variants maintain identical electrical and mechanical specifications. The part number suffix variations reflect manufacturing or configuration differences not specified in the provided parameters. All variants are active products with RoHS compliance.
Q: What is the significance of the backset spacing difference in HARTING connectors?
A: Backset spacing defines the distance from the connector mounting surface to the contact insertion point. The HARTING connectors feature 0.409" spacing compared to 0.318" in the Amphenol ICC parts. This difference affects PCB layout and component clearances. Substitution with HARTING parts requires verification that the larger backset spacing is compatible with the existing PCB design and component placement.
Q: Are there any voltage rating considerations for substitution?
A: The FCC17B25SA650 specifies a 200V voltage rating. The FCE17 series and HARTING alternatives do not specify voltage ratings in the provided parameters. For applications requiring explicit voltage rating compliance, the Amphenol ICC FCE17 series is recommended as the primary substitute, as it maintains the original manufacturer's design specifications.
Q: What is the impact of RoHS compliance on substitution decisions?
A: The FCC17B25SA650 is RoHS non-compliant. All substitute options (FCE17 series and HARTING connectors) are RoHS compliant. For new designs or systems subject to RoHS regulations, substitution to compliant alternatives is mandatory. For legacy system maintenance, RoHS compliance may not be a functional requirement, but regulatory and supply chain considerations should be evaluated.
Q: Can the machined contact form of the FCC17B25SA650 be substituted with stamped contacts in HARTING connectors?
A: Contact form differences (machined versus stamped) affect contact durability and mating cycle performance. The Amphenol ICC FCE17 series maintains the machined contact form of the original part. HARTING connectors use stamped contacts, which may be suitable for applications with lower mating cycle requirements. For high-reliability or high-cycle applications, the FCE17 series is recommended.
Q: What inventory considerations should guide substitution selection?
A: The Amphenol ICC FCE17 series variants show active inventory levels ranging from 680 to 1,077 pieces. HARTING alternatives show inventory levels of 734 to 1,073 pieces. All options demonstrate adequate stock availability. Selection should prioritize parameter compatibility with the original design, with inventory levels as a secondary consideration.
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